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Arf/GEF 复合物与带电脂质之间的多种相互作用决定了在膜上的激活动力学。

Multiple interactions between an Arf/GEF complex and charged lipids determine activation kinetics on the membrane.

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720.

Howard Hughes Medical Institute, University of California, Berkeley, CA 94720.

出版信息

Proc Natl Acad Sci U S A. 2017 Oct 24;114(43):11416-11421. doi: 10.1073/pnas.1707970114. Epub 2017 Sep 18.

Abstract

Lipidated small GTPases and their regulators need to bind to membranes to propagate actions in the cell, but an integrated understanding of how the lipid bilayer exerts its effect has remained elusive. Here we focused on ADP ribosylation factor (Arf) GTPases, which orchestrate a variety of regulatory functions in lipid and membrane trafficking, and their activation by the guanine-nucleotide exchange factor (GEF) Brag2, which controls integrin endocytosis and cell adhesion and is impaired in cancer and developmental diseases. Biochemical and structural data are available that showed the exceptional efficiency of Arf activation by Brag2 on membranes. We determined the high-resolution crystal structure of unbound Brag2 containing the GEF (Sec7) and membrane-binding (pleckstrin homology) domains, revealing that it has a constitutively active conformation. We used this structure to analyze the interaction of uncomplexed Brag2 and of the myristoylated Arf1/Brag2 complex with a phosphatidylinositol bisphosphate (PIP) -containing lipid bilayer, using coarse-grained molecular dynamics. These simulations revealed that the system forms a close-packed, oriented interaction with the membrane, in which multiple PIP lipids bind the canonical lipid-binding site and unique peripheral sites of the PH domain, the Arf GTPase and, unexpectedly, the Sec7 domain. We cross-validated these predictions by reconstituting the binding and kinetics of Arf and Brag2 in artificial membranes. Our coarse-grained structural model thus suggests that the high efficiency of Brag2 requires interaction with multiple lipids and a well-defined orientation on the membrane, resulting in a local PIP enrichment, which has the potential to signal toward the Arf pathway.

摘要

脂化小 GTP 酶及其调节剂需要与膜结合才能在细胞中传递作用,但人们对脂质双层如何发挥作用仍缺乏综合理解。在这里,我们关注的是 ADP 核糖基化因子(Arf)GTP 酶,它在脂质和膜运输中协调各种调节功能,以及其激活因子鸟嘌呤核苷酸交换因子(GEF)Brag2,Brag2 控制整合素内吞作用和细胞黏附,在癌症和发育性疾病中受损。有生化和结构数据表明,Brag2 在膜上对 Arf 的激活效率极高。我们确定了含有 GEF(Sec7)和膜结合(pleckstrin 同源)结构域的未结合 Brag2 的高分辨率晶体结构,揭示了它具有组成性激活构象。我们使用该结构,通过粗粒化分子动力学分析了未复合的 Brag2 以及豆蔻酰化的 Arf1/Brag2 复合物与含有双磷酸酰肌醇(PIP)的脂质双层的相互作用。这些模拟表明,该系统与膜形成紧密堆积、定向相互作用,其中多个 PIP 脂质结合经典的脂质结合位点和 PH 结构域、Arf GTP 酶以及出人意料的 Sec7 结构域的独特外围位点。我们通过在人工膜中重新构建 Arf 和 Brag2 的结合和动力学来验证这些预测。因此,我们的粗粒化结构模型表明,Brag2 的高效率需要与多个脂质相互作用,并在膜上具有明确的取向,从而导致局部 PIP 富集,这有可能向 Arf 途径发出信号。

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